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Serial crystallography on in vivo grown microcrystals using synchrotron radiation

Crystal structure determinations of biological macromolecules are limited by the availability of sufficiently sized crystals and by the fact that crystal quality deteriorates during data collection owing to radiation damage. Exploiting a micrometre-sized X-ray beam, high-precision diffractometry and...

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Autores principales: Gati, Cornelius, Bourenkov, Gleb, Klinge, Marco, Rehders, Dirk, Stellato, Francesco, Oberthür, Dominik, Yefanov, Oleksandr, Sommer, Benjamin P., Mogk, Stefan, Duszenko, Michael, Betzel, Christian, Schneider, Thomas R., Chapman, Henry N., Redecke, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4062088/
https://www.ncbi.nlm.nih.gov/pubmed/25075324
http://dx.doi.org/10.1107/S2052252513033939
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author Gati, Cornelius
Bourenkov, Gleb
Klinge, Marco
Rehders, Dirk
Stellato, Francesco
Oberthür, Dominik
Yefanov, Oleksandr
Sommer, Benjamin P.
Mogk, Stefan
Duszenko, Michael
Betzel, Christian
Schneider, Thomas R.
Chapman, Henry N.
Redecke, Lars
author_facet Gati, Cornelius
Bourenkov, Gleb
Klinge, Marco
Rehders, Dirk
Stellato, Francesco
Oberthür, Dominik
Yefanov, Oleksandr
Sommer, Benjamin P.
Mogk, Stefan
Duszenko, Michael
Betzel, Christian
Schneider, Thomas R.
Chapman, Henry N.
Redecke, Lars
author_sort Gati, Cornelius
collection PubMed
description Crystal structure determinations of biological macromolecules are limited by the availability of sufficiently sized crystals and by the fact that crystal quality deteriorates during data collection owing to radiation damage. Exploiting a micrometre-sized X-ray beam, high-precision diffractometry and shutterless data acquisition with a pixel-array detector, a strategy for collecting data from many micrometre-sized crystals presented to an X-ray beam in a vitrified suspension is demonstrated. By combining diffraction data from 80 Trypanosoma brucei procathepsin B crystals with an average volume of 9 µm(3), a complete data set to 3.0 Å resolution has been assembled. The data allowed the refinement of a structural model that is consistent with that previously obtained using free-electron laser radiation, providing mutual validation. Further improvements of the serial synchrotron crystallography technique and its combination with serial femtosecond crystallography are discussed that may allow the determination of high-resolution structures of micrometre-sized crystals.
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spelling pubmed-40620882014-07-24 Serial crystallography on in vivo grown microcrystals using synchrotron radiation Gati, Cornelius Bourenkov, Gleb Klinge, Marco Rehders, Dirk Stellato, Francesco Oberthür, Dominik Yefanov, Oleksandr Sommer, Benjamin P. Mogk, Stefan Duszenko, Michael Betzel, Christian Schneider, Thomas R. Chapman, Henry N. Redecke, Lars IUCrJ Research Papers Crystal structure determinations of biological macromolecules are limited by the availability of sufficiently sized crystals and by the fact that crystal quality deteriorates during data collection owing to radiation damage. Exploiting a micrometre-sized X-ray beam, high-precision diffractometry and shutterless data acquisition with a pixel-array detector, a strategy for collecting data from many micrometre-sized crystals presented to an X-ray beam in a vitrified suspension is demonstrated. By combining diffraction data from 80 Trypanosoma brucei procathepsin B crystals with an average volume of 9 µm(3), a complete data set to 3.0 Å resolution has been assembled. The data allowed the refinement of a structural model that is consistent with that previously obtained using free-electron laser radiation, providing mutual validation. Further improvements of the serial synchrotron crystallography technique and its combination with serial femtosecond crystallography are discussed that may allow the determination of high-resolution structures of micrometre-sized crystals. International Union of Crystallography 2014-02-10 /pmc/articles/PMC4062088/ /pubmed/25075324 http://dx.doi.org/10.1107/S2052252513033939 Text en © Cornelius Gati et al. 2014 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Gati, Cornelius
Bourenkov, Gleb
Klinge, Marco
Rehders, Dirk
Stellato, Francesco
Oberthür, Dominik
Yefanov, Oleksandr
Sommer, Benjamin P.
Mogk, Stefan
Duszenko, Michael
Betzel, Christian
Schneider, Thomas R.
Chapman, Henry N.
Redecke, Lars
Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title_full Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title_fullStr Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title_full_unstemmed Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title_short Serial crystallography on in vivo grown microcrystals using synchrotron radiation
title_sort serial crystallography on in vivo grown microcrystals using synchrotron radiation
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4062088/
https://www.ncbi.nlm.nih.gov/pubmed/25075324
http://dx.doi.org/10.1107/S2052252513033939
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